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Cell division promotes efficient retrotransposition in a stable L1 reporter cell line

BACKGROUND: Long interspersed element type one (L1) actively modifies the human genome by inserting new copies of itself. This process, termed retrotransposition, requires the formation of an L1 ribonucleoprotein (RNP) complex, which must enter the nucleus before retrotransposition can proceed. Thus...

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Autores principales: Xie, Yi, Mates, Lajos, Ivics, Zoltán, Izsvák, Zsuzsanna, Martin, Sandra L, An, Wenfeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607998/
https://www.ncbi.nlm.nih.gov/pubmed/23497436
http://dx.doi.org/10.1186/1759-8753-4-10
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author Xie, Yi
Mates, Lajos
Ivics, Zoltán
Izsvák, Zsuzsanna
Martin, Sandra L
An, Wenfeng
author_facet Xie, Yi
Mates, Lajos
Ivics, Zoltán
Izsvák, Zsuzsanna
Martin, Sandra L
An, Wenfeng
author_sort Xie, Yi
collection PubMed
description BACKGROUND: Long interspersed element type one (L1) actively modifies the human genome by inserting new copies of itself. This process, termed retrotransposition, requires the formation of an L1 ribonucleoprotein (RNP) complex, which must enter the nucleus before retrotransposition can proceed. Thus, the nuclear import of L1 RNP presents an opportunity for cells to regulate L1 retrotransposition post-translationally. The effect of cell division on L1 retrotransposition has been investigated by two previous studies, which observed varied degrees of inhibition in retrotransposition when primary cell strains or cancer cell lines were experimentally arrested in different stages of the cell cycle. However, seemingly divergent conclusions were reached. The role of cell division on retrotransposition remains highly debated. FINDINGS: To monitor both L1 expression and retrotransposition quantitatively, we developed a stable dual-luciferase L1 reporter cell line, in which a bi-directional tetracycline-inducible promoter drives the expression of both a firefly luciferase-tagged L1 element and a Renilla luciferase, the latter indicative of the level of promoter induction. We observed an additional 10-fold reduction in retrotransposition in cell-cycle arrested cells even after retrotransposition had been normalized to Renilla luciferase or L1 ORF1 protein levels. In synchronized cells, cells undergoing two mitoses showed 2.6-fold higher retrotransposition than those undergoing one mitosis although L1 expression was induced for the same amount of time. CONCLUSIONS: Our data provide additional support for an important role of cell division in retrotransposition and argue that restricting the accessibility of L1 RNP to nuclear DNA could be a post-translational regulatory mechanism for retrotransposition.
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spelling pubmed-36079982013-03-27 Cell division promotes efficient retrotransposition in a stable L1 reporter cell line Xie, Yi Mates, Lajos Ivics, Zoltán Izsvák, Zsuzsanna Martin, Sandra L An, Wenfeng Mob DNA Short Report BACKGROUND: Long interspersed element type one (L1) actively modifies the human genome by inserting new copies of itself. This process, termed retrotransposition, requires the formation of an L1 ribonucleoprotein (RNP) complex, which must enter the nucleus before retrotransposition can proceed. Thus, the nuclear import of L1 RNP presents an opportunity for cells to regulate L1 retrotransposition post-translationally. The effect of cell division on L1 retrotransposition has been investigated by two previous studies, which observed varied degrees of inhibition in retrotransposition when primary cell strains or cancer cell lines were experimentally arrested in different stages of the cell cycle. However, seemingly divergent conclusions were reached. The role of cell division on retrotransposition remains highly debated. FINDINGS: To monitor both L1 expression and retrotransposition quantitatively, we developed a stable dual-luciferase L1 reporter cell line, in which a bi-directional tetracycline-inducible promoter drives the expression of both a firefly luciferase-tagged L1 element and a Renilla luciferase, the latter indicative of the level of promoter induction. We observed an additional 10-fold reduction in retrotransposition in cell-cycle arrested cells even after retrotransposition had been normalized to Renilla luciferase or L1 ORF1 protein levels. In synchronized cells, cells undergoing two mitoses showed 2.6-fold higher retrotransposition than those undergoing one mitosis although L1 expression was induced for the same amount of time. CONCLUSIONS: Our data provide additional support for an important role of cell division in retrotransposition and argue that restricting the accessibility of L1 RNP to nuclear DNA could be a post-translational regulatory mechanism for retrotransposition. BioMed Central 2013-03-06 /pmc/articles/PMC3607998/ /pubmed/23497436 http://dx.doi.org/10.1186/1759-8753-4-10 Text en Copyright ©2013 Xie et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Report
Xie, Yi
Mates, Lajos
Ivics, Zoltán
Izsvák, Zsuzsanna
Martin, Sandra L
An, Wenfeng
Cell division promotes efficient retrotransposition in a stable L1 reporter cell line
title Cell division promotes efficient retrotransposition in a stable L1 reporter cell line
title_full Cell division promotes efficient retrotransposition in a stable L1 reporter cell line
title_fullStr Cell division promotes efficient retrotransposition in a stable L1 reporter cell line
title_full_unstemmed Cell division promotes efficient retrotransposition in a stable L1 reporter cell line
title_short Cell division promotes efficient retrotransposition in a stable L1 reporter cell line
title_sort cell division promotes efficient retrotransposition in a stable l1 reporter cell line
topic Short Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607998/
https://www.ncbi.nlm.nih.gov/pubmed/23497436
http://dx.doi.org/10.1186/1759-8753-4-10
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